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Combined effect of PVDs and reinforcement on embankments over rate-sensitive soils

机译:速率敏感土壤上PVD和加筋对路堤的联合作用

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A numerical study of the behavior of geosynthetic-reinforced embankments constructed on soft rate-sensitive soil with and without prefabricated vertical drains (PVDs) is described. The time-dependent stress-strain-strength characteristic of rate-sensitive soil is taken into account using an elasto-viscoplastic constitutive model. The effects of reinforcement stiffness, construction rate, soil viscosity as well as PVD spacing are examined both during and following construction. A sensitivity analysis shows the effect of construction rate and PVD spacing on the short-term and long-term stability of reinforced embankments and the mobilized reinforcement strain. For rate-sensitive soils, the critical period with respect to the stability of the embankment occurs after the end of the construction due to a delayed, creep-induced, build-up of excess pore pressure in the viscous foundation soil. PVDs substantially reduce the effect of creep-induced excess pore pressure, and hence not only allow a faster rate of consolidation but also improve the long-term stability of the reinforced embankment. Furthermore, PVDs work together with geosynthetic reinforcement to minimize the differential settlement and lateral deformation of the foundation. The combined use of the geosynthetic reinforcement and PVDs enhances embankment performance substantially more than the use of either method of soil improvement alone.
机译:描述了在有和没有预制垂直排水沟(PVD)的情况下,在对速率敏感的软土上建造的土工加筋路堤的行为的数值研究。使用弹黏塑性本构模型考虑了速率敏感土壤随时间变化的应力-应变-强度特性。在施工过程中及施工后均检查了增强刚度,施工速率,土壤粘度以及PVD间距的影响。敏感性分析显示了施工速率和PVD间距对加筋路堤的短期和长期稳定性以及动员的加筋应变的影响。对于速率敏感的土壤,路堤稳定性的关键时期发生在施工结束后,这是由于粘性基础土壤中滞后的蠕变引起的多余孔隙压力的累积。 PVD大大降低了蠕变引起的过大孔隙压力的影响,因此不仅可以加快固结速度,而且可以改善加筋路堤的长期稳定性。此外,PVD与土工合成材料一起使用,可最大程度地减少基础的差异沉降和横向变形。土工合成材料增强材料和PVD的组合使用大大提高了路堤的性能,而这两种方法都不能单独使用改良土壤的方法。

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